Files
clide/linux/runner/my_application.cc
T
jpmschweitzerandClaude Opus 4.6 065cef24c2 use gdk_window_set_decorations to strip KWin SSD
gtk_window_set_decorated alone doesn't work on KDE Wayland — KWin
adds server-side decorations regardless. Now also calling
gdk_window_set_decorations(gdk_win, 0) after realize and before
first frame show, which communicates directly with the compositor
via GDK's Wayland layer.

Co-Authored-By: Claude Opus 4.6 (1M context) <noreply@anthropic.com>
2026-04-23 09:02:45 +02:00

198 lines
7.4 KiB
C++

#include "my_application.h"
#include <flutter_linux/flutter_linux.h>
#ifdef GDK_WINDOWING_X11
#include <gdk/gdkx.h>
#endif
#include "flutter/generated_plugin_registrant.h"
struct _MyApplication {
GtkApplication parent_instance;
char** dart_entrypoint_arguments;
};
G_DEFINE_TYPE(MyApplication, my_application, GTK_TYPE_APPLICATION)
// D-057: strip all window decorations after the GdkWindow exists.
static void remove_decorations(GtkWidget* widget, gpointer data) {
(void)data;
GdkWindow* gdk_win = gtk_widget_get_window(widget);
if (gdk_win != nullptr) {
gdk_window_set_decorations(gdk_win, (GdkWMDecoration)0);
}
}
// Called when first Flutter frame received.
static void first_frame_cb(MyApplication* self, FlView* view) {
GtkWidget* toplevel = gtk_widget_get_toplevel(GTK_WIDGET(view));
remove_decorations(toplevel, nullptr);
gtk_widget_show(toplevel);
}
// Implements GApplication::activate.
static void my_application_activate(GApplication* application) {
MyApplication* self = MY_APPLICATION(application);
GtkWindow* window =
GTK_WINDOW(gtk_application_window_new(GTK_APPLICATION(application)));
// D-057: frameless custom chrome — the Flutter app draws its own
// hat bar with drag regions and window buttons.
gtk_window_set_decorated(window, FALSE);
gtk_window_set_title(window, "clide");
// Also strip decorations via GDK after realize (catches KDE/KWin
// on Wayland which ignores gtk_window_set_decorated).
g_signal_connect(window, "realize", G_CALLBACK(remove_decorations), nullptr);
gtk_window_set_default_size(window, 1280, 720);
// Window icon — load from the bundled asset.
g_autoptr(GError) icon_error = nullptr;
GdkPixbuf* icon = gdk_pixbuf_new_from_file(
"data/flutter_assets/assets/logo/clide-logo-256.png", &icon_error);
if (icon != nullptr) {
gtk_window_set_icon(window, icon);
g_object_unref(icon);
}
g_autoptr(FlDartProject) project = fl_dart_project_new();
fl_dart_project_set_dart_entrypoint_arguments(
project, self->dart_entrypoint_arguments);
FlView* view = fl_view_new(project);
GdkRGBA background_color;
// Background defaults to black, override it here if necessary, e.g. #00000000
// for transparent.
gdk_rgba_parse(&background_color, "#000000");
fl_view_set_background_color(view, &background_color);
gtk_widget_show(GTK_WIDGET(view));
gtk_container_add(GTK_CONTAINER(window), GTK_WIDGET(view));
// Show the window when Flutter renders.
// Requires the view to be realized so we can start rendering.
g_signal_connect_swapped(view, "first-frame", G_CALLBACK(first_frame_cb),
self);
gtk_widget_realize(GTK_WIDGET(view));
fl_register_plugins(FL_PLUGIN_REGISTRY(view));
// D-057: method channel for window controls (drag, minimize, maximize, close).
FlEngine* engine = fl_view_get_engine(view);
g_autoptr(FlStandardMethodCodec) codec = fl_standard_method_codec_new();
FlMethodChannel* channel = fl_method_channel_new(
fl_engine_get_binary_messenger(engine), "clide/window",
FL_METHOD_CODEC(codec));
g_object_set_data(G_OBJECT(window), "clide_method_channel", channel);
fl_method_channel_set_method_call_handler(
channel,
[](FlMethodChannel* channel, FlMethodCall* method_call,
gpointer user_data) {
GtkWindow* w = GTK_WINDOW(user_data);
const gchar* method = fl_method_call_get_name(method_call);
g_autoptr(FlMethodResponse) response = nullptr;
if (g_strcmp0(method, "startDrag") == 0) {
gtk_window_begin_move_drag(w, 1, 0, 0,
GDK_CURRENT_TIME);
response = FL_METHOD_RESPONSE(
fl_method_success_response_new(fl_value_new_null()));
} else if (g_strcmp0(method, "minimize") == 0) {
gtk_window_iconify(w);
response = FL_METHOD_RESPONSE(
fl_method_success_response_new(fl_value_new_null()));
} else if (g_strcmp0(method, "maximize") == 0) {
if (gtk_window_is_maximized(w)) {
gtk_window_unmaximize(w);
} else {
gtk_window_maximize(w);
}
response = FL_METHOD_RESPONSE(
fl_method_success_response_new(fl_value_new_null()));
} else if (g_strcmp0(method, "close") == 0) {
gtk_window_close(w);
response = FL_METHOD_RESPONSE(
fl_method_success_response_new(fl_value_new_null()));
} else if (g_strcmp0(method, "isMaximized") == 0) {
response = FL_METHOD_RESPONSE(fl_method_success_response_new(
fl_value_new_bool(gtk_window_is_maximized(w))));
} else {
response = FL_METHOD_RESPONSE(fl_method_not_implemented_response_new());
}
fl_method_call_respond(method_call, response, nullptr);
},
window, nullptr);
gtk_widget_grab_focus(GTK_WIDGET(view));
}
// Implements GApplication::local_command_line.
static gboolean my_application_local_command_line(GApplication* application,
gchar*** arguments,
int* exit_status) {
MyApplication* self = MY_APPLICATION(application);
// Strip out the first argument as it is the binary name.
self->dart_entrypoint_arguments = g_strdupv(*arguments + 1);
g_autoptr(GError) error = nullptr;
if (!g_application_register(application, nullptr, &error)) {
g_warning("Failed to register: %s", error->message);
*exit_status = 1;
return TRUE;
}
g_application_activate(application);
*exit_status = 0;
return TRUE;
}
// Implements GApplication::startup.
static void my_application_startup(GApplication* application) {
// MyApplication* self = MY_APPLICATION(object);
// Perform any actions required at application startup.
G_APPLICATION_CLASS(my_application_parent_class)->startup(application);
}
// Implements GApplication::shutdown.
static void my_application_shutdown(GApplication* application) {
// MyApplication* self = MY_APPLICATION(object);
// Perform any actions required at application shutdown.
G_APPLICATION_CLASS(my_application_parent_class)->shutdown(application);
}
// Implements GObject::dispose.
static void my_application_dispose(GObject* object) {
MyApplication* self = MY_APPLICATION(object);
g_clear_pointer(&self->dart_entrypoint_arguments, g_strfreev);
G_OBJECT_CLASS(my_application_parent_class)->dispose(object);
}
static void my_application_class_init(MyApplicationClass* klass) {
G_APPLICATION_CLASS(klass)->activate = my_application_activate;
G_APPLICATION_CLASS(klass)->local_command_line =
my_application_local_command_line;
G_APPLICATION_CLASS(klass)->startup = my_application_startup;
G_APPLICATION_CLASS(klass)->shutdown = my_application_shutdown;
G_OBJECT_CLASS(klass)->dispose = my_application_dispose;
}
static void my_application_init(MyApplication* self) {}
MyApplication* my_application_new() {
// Set the program name to the application ID, which helps various systems
// like GTK and desktop environments map this running application to its
// corresponding .desktop file. This ensures better integration by allowing
// the application to be recognized beyond its binary name.
g_set_prgname(APPLICATION_ID);
return MY_APPLICATION(g_object_new(my_application_get_type(),
"application-id", APPLICATION_ID, "flags",
G_APPLICATION_NON_UNIQUE, nullptr));
}